Browsing by Author a9bf936c-beb2-4193-b0d0-4113a0be05d8

0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

Showing results 1 to 19 of 19
RightsPreviewIssue DateTitleAuthor(s)
A review of sample analysis at Mars evolved gas analysis laboratory analog work supporting the presence of perchlorates and chlorates in Gale Crater, Mars.pdf.jpg20-Apr-2021A Review of Sample Analysis at Mars-Evolved Gas Analysis Laboratory Analog Work Supporting the Presence of Perchlorates and Chlorates in Gale Crater, MarsClark, J.; Sutter, B.; Douglas Archer, P.; Ming, D.; Rampe, E.; McAdam, A. C.; Navarro González, R.; Eigenbrode, J. L.; Glavin, D.; Zorzano, M. P.; Martín Torres, J.; Morris, Richard V.; Tu, V.; Ralston, S. J.; Mahaffy, Paul R.
Aerosol radiative impact during the summer 2019 heatwave produced partly by an inter-continental Saharan dust outbreak, part 1, short wave dust direct radiative effect.pdf.jpg30-Apr-2021Aerosol radiative impact during the summer 2019 heatwave produced partly by an inter-continental Saharan dust outbreak – Part 1: Short-wave dust direct radiative effectCórdoba Jabonero, C.; Sicard, M.; López Cayuela, M. A.; Ansmann, A.; Comerón, A.; Zorzano, M. P.; Rodríguez Gómez, A.; Muñóz Porcar, C.
acceso-restringido.pdf.jpg15-Nov-2020Ar+ ion bombardment dictates glycine adsorption on pyrite (1 0 0) surface: X-ray photoemission spectroscopy and DFT approachGálvez Martínez, S.; Escamilla Roa, E.; Zorzano, M. P.; Mateo Martí, Eva
ATMO-vent, an adapted breathing atmosphere for Covid 19 patients.pdf.jpg26-Sep-2020ATMO-vent: An adapted breathing atmosphere for COVID-19 patientsMathanlal, T.; Nazarious, M. I.; Mantas Nakhai, R.; Zorzano, M. P.
Atmospheric composition of exoplanets based on the thermal escape of gases and implications for habitability.pdf.jpg9-Sep-2020Atmospheric composition of exoplanets based on the thermal escape of gases and implications for habitability: Atmospheric composition of exoplanetsKonatham, S.; Martín Torres, J.; Zorzano, M. P.
Characterizing Dust Radiation feedback and refining the Horizontal Resolution of the MarsWRF model down.pdf.jpg19-Feb-2021Characterizing Dust-Radiation Feedback and Refining the Horizontal Resolution of the MarsWRF Model Down to 0.5 DegreeGebhardt, C.; Abuelgasim, A.; Fonseca, R. M.; Martín Torres, J.; Zorzano, M. P.
Defects on a pyrite(100) surface produce chemical evolution of flycine under inert conditions- experimental and theoretical approaches.pdf.jpg10-Oct-2019Defects on a pyrite(100) surface produce chemical evolution of glycine under inert conditions: experimental and theoretical approachesGálvez Martínez, S.; Escamilla Roa, E.; Zorzano, M. P.; Mateo Martí, Eva
Development of a wind retrieval method for los speed low pressure flows for ExoMars.pdf.jpg5-Nov-2020Development of a wind retrieval method for low-speed low-pressure flows for ExoMarsSoria Salinas, Á.; Zorzano, M. P.; Mantas Nakhai, R.; Martín Torres, J.
acceso-restringido.pdf.jpg15-May-2020DFT study of the reduction reaction of calcium perchlorate on olivine surface: Implications to formation of Martian's regolithEscamilla Roa, E.; Zorzano, M. P.; Martín Torres, J.; Hernández Laguna, A.; Sainz Díaz, C. I.
Fully interactive and refined resolution sumulations of the Martian dust cycle by the MarsWRF model.pdf.jpg25-Aug-2020Fully Interactive and Refined Resolution Simulations of the Martian Dust Cycle by the MarsWRF ModelGebhardt, C.; Abuelgasim, A.; Fonseca, R. M.; Martín Torres, J.; Zorzano, M. P.
acceso-restringido.pdf.jpg28-Jul-2021Measuring electrical conductivity to study the formation of brines under martian conditionsNazarious, M. I.; Ramachandran, A. V.; Zorzano, M. P.; Martín Torres, J.
Supplement Metabolt, an in.situ instrument to characterize the metabolic activity of microbial soil ecosystems using electrochemical and gaseous signatures.pdf.jpg11-Aug-2020Metabolt: An In-Situ Instrument to Characterize the Metabolic Activity of Microbial Soil Ecosystems Using Electrochemical and Gaseous SignaturesNazarious, M. I.; Zorzano, M. P.; Martín Torres, J.
1-s2.0-S246806722030078X-main.pdf.jpg12-Apr-2021PACKMAN – A portable instrument to investigate space weatherMathanlal, T.; Vakkada Ramachandran, A.; Zorzano, M. P.; Martín Torres, J.
Pressure optimized powEred respirator (proper)- A miniaturized wearable cleanroom and biosafety system for aerially transmitted viral infections such as COVID 19.pdf.jpg6-Oct-2020Pressure Optimized PowEred Respirator (PROPER): A miniaturized wearable cleanroom and biosafety system for aerially transmitted viral infections such as COVID-19Nazarious, M. I.; Mathanlal, T.; Zorzano, M. P.; Martín Torres, J.
Quantifiying the Congruence between Air and Land Surface Temperatures.pdf.jpg4-Dec-2019Quantifying the Congruence between Air and Land Surface Temperatures for Various Climatic and Elevation Zones of Western HimalayaSingh, S.; Bhardwaj, A.; Singh, A.; Sam, L.; Shekhar, M.; Martín Torres, F. J.; Zorzano, M. P.
Seasonal variations in Atmospheric composition as measured in Gale Crater Mars.pdf.jpg12-Nov-2019Seasonal Variations in Atmospheric Composition as Measured in Gale Crater, MarsTrainer, M. G.; Wong, M. H.; McConnochie, T. H.; Franz, H. B.; Atreya, S. K.; Conrad, Pamela G.; Lefèvre, F.; Mahaffy, Paul R.; Malespin, C. A.; Manning, H. L. K.; Martín Torres, J.; Martínez, G. M.; McKay, C. P.; Navarro González, R.; Vicente Retortillo, Á.; Webster, C. R.; Zorzano, M. P.
subsurface-robotic-exploration-for-geomorphology-astrobiology-and-mining-during-minar6-campaign-boulby-mine-uk-part-i-rover-development.pdf.jpg5-Apr-2020Subsurface robotic exploration for geomorphology, astrobiology and mining during MINAR6 campaign, Boulby Mine, UK: part I (Rover development).Mathanlal, T.; Bhardwaj, A.; Vakkada Ramachandran, A.; Zorzano, M. P.; Martín Torres, J.; Cockell, C. S.; Edwards, T.
Subsurface robotic exploration for geomorphology, astrobiology and mining during MINAR6 campaing, Boulby Mine, UK part II.pdf.jpg7-Jan-2021Subsurface robotic exploration for geomorphology, astrobiology and mining during MINAR6 campaign, Boulby Mine, UK: part II (Results and Discussion)Mathanlal, T.; Bhardwaj, A.; Vakkada Ramachandran, A.; Zorzano, M. P.; Martín Torres, J.; Cockell, C. S.
The dynamic atmospheric and aeolian environment of Jezero crater, Mars.pdf.jpg25-May-2022The dynamic atmospheric and aeolian environment of Jezero crater, MarsNewman, C. E.; Hueso, R.; Lemmon, M. T.; Munguira, A.; Vicente Retortillo, Á.; Apéstigue, V.; Martínez, G. M.; Toledo, D.; Sullivan, R.; Herkenhoff, K. E.; De la Torre Juárez, M.; Richardson, M. I.; Stott, A. E.; Murdoch, N.; Sánchez Lavega, A.; Wolff, M. J.; Arruego, I.; Sebastián, E.; Navarro, S.; Gómez Elvira, J.; Tamppari, L. K.; Smith, M. D.; Lepinette, A.; Viúdez Moreiras, Daniel; Harri, Ari-Matti; Genzer, M.; Hieta, M.; Lorenz, R. D.; Conrad, Pamela G.; Gómez, F.; Mcconnochie, T. H.; Mimoun, D.; Tate, C.; Bertrand, T.; Belli, J. F.; Maki, J. N.; Rodríguez Manfredi, J. A.; Wiens, R. C.; Chide, B.; Maurice, S.; Zorzano, M. P.; Mora, L.; Baker, M. M.; Banfield, D.; Pla García, J.; Beyssac, O.; Brown, Adrian Jon; Clark, B.; Montmessin, F.; Fischer, E.; Patel, P.; Del Río Gaztelurrutia, T.; Fouchet, T.; Francis, R.; Guzewich, S. D.